Cannata J M, Williams J A, Zhou Q F, Sun L, Shung K K, Yu H, Kim E S
J Appl Phys. 2008;103(8):artno084109.
A simple fabrication technique was developed to produce high frequency (100 MHz) self-focused single element transducers with sputtered zinc oxide (ZnO) crystal films. This technique requires the sputtering of a ZnO film directly onto a curved backing substrate. Transducers were fabricated by sputtering an 18 μm thick ZnO layer on 2 mm diameter aluminum rods with ends shaped and polished to produce a 2 mm focus or f-number equal to one. The aluminum rod served a dual purpose as the backing layer and positive electrode for the resultant transducers. A 4 μm Parylene matching layer was deposited on the transducers after housing and interconnect. This matching layer was used to protect the substrate and condition the transfer of acoustic energy between the ZnO film and the load medium. The pulse-echo response for a representative transducer was centered at 101 MHz with a -6 dB bandwidth of 49%. The measured two way insertion loss was 44 dB. A tungsten wire phantom and an adult zebrafish eye were imaged to show the capability of these transducers.
开发了一种简单的制造技术,以生产具有溅射氧化锌(ZnO)晶体膜的高频(100 MHz)自聚焦单元素换能器。该技术要求将ZnO膜直接溅射在弯曲的背衬基板上。通过在直径2 mm的铝棒上溅射18μm厚的ZnO层来制造换能器,铝棒的端部经过成型和抛光,以产生2 mm的焦距或f值等于1。铝棒作为背衬层和所得换能器的正极,具有双重用途。在封装和互连之后,在换能器上沉积4μm的聚对二甲苯匹配层。该匹配层用于保护基板并调节ZnO膜与负载介质之间的声能传输。一个代表性换能器的脉冲回波响应中心频率为101 MHz,-6 dB带宽为49%。测得的双向插入损耗为44 dB。使用钨丝模型和成年斑马鱼眼睛进行成像,以展示这些换能器的能力。